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1.

Numerical simulations of long-range plasmons.

Degiron A, Smith D.

Opt Express. 2006 Feb 20;14(4):1611-25.

PMID:
19503489
3.

Long-range dielectric-loaded surface plasmon-polariton waveguides.

Holmgaard T, Gosciniak J, Bozhevolnyi SI.

Opt Express. 2010 Oct 25;18(22):23009-15. doi: 10.1364/OE.18.023009.

PMID:
21164640
4.

Hybrid long-range surface plasmon-polariton modes with tight field confinement guided by asymmetrical waveguides.

Chen J, Li Z, Yue S, Gong Q.

Opt Express. 2009 Dec 21;17(26):23603-9. doi: 10.1364/OE.17.023603.

PMID:
20052069
5.

Curved long-range surface plasmon-polariton waveguides.

Berini P, Lu J.

Opt Express. 2006 Mar 20;14(6):2365-71.

PMID:
19503574
6.

Adiabatic bends in surface plasmon polariton band gap structures.

Radko IP, S√łndergaard T, Bozhevolnyi SI.

Opt Express. 2006 May 1;14(9):4107-14.

PMID:
19516559
7.

Experimental demonstration of CMOS-compatible long-range dielectric-loaded surface plasmon-polariton waveguides (LR-DLSPPWs).

Zektzer R, Desiatov B, Mazurski N, Bozhevolnyi SI, Levy U.

Opt Express. 2014 Sep 8;22(18):22009-17. doi: 10.1364/OE.22.022009.

PMID:
25321575
8.

Surface plasmon polariton analogue to Young's double-slit experiment.

Zia R, Brongersma ML.

Nat Nanotechnol. 2007 Jul;2(7):426-9. doi: 10.1038/nnano.2007.185. Epub 2007 Jul 1.

PMID:
18654327
9.

Surface plasmon-polariton propagation in piecewise linear chains of composite nanospheres: the role of optical gain and chain layout.

Udagedara IB, Rukhlenko ID, Premaratne M.

Opt Express. 2011 Oct 10;19(21):19973-86. doi: 10.1364/OE.19.019973.

PMID:
21997007
10.

Odd-mode surface plasmon polaritons supported by complementary plasmonic metamaterial.

Gao X, Zhou L, Cui TJ.

Sci Rep. 2015 Mar 18;5:9250. doi: 10.1038/srep09250.

11.

Leaky modes of curved long-range surface plasmon-polariton waveguide.

Kim WK, Yang WS, Lee HM, Lee HY, Lee MH, Jung WJ.

Opt Express. 2006 Dec 25;14(26):13043-9.

PMID:
19532199
12.

Numerical analysis of long-range surface plasmon polariton modes in nanoscale plasmonic waveguides.

Krasavin AV, Zayats AV.

Opt Lett. 2010 Jul 1;35(13):2118-20. doi: 10.1364/OL.35.002118.

PMID:
20596165
13.

Numerical investigation of mode characteristics of nanoscale surface plasmon-polaritons using a pseudospectral scheme.

Huang CC.

Opt Express. 2010 Nov 8;18(23):23711-26. doi: 10.1364/OE.18.023711.

PMID:
21164715
14.

Surface-Plasmon-Polariton modes in deep metallic trenches- measurement and analysis.

Satuby Y, Orenstein M.

Opt Express. 2007 Apr 2;15(7):4247-52.

PMID:
19532669
15.

Geometries and materials for subwavelength surface plasmon modes.

Zia R, Selker MD, Catrysse PB, Brongersma ML.

J Opt Soc Am A Opt Image Sci Vis. 2004 Dec;21(12):2442-6.

PMID:
15603083
16.

Long-range dielectric-loaded surface plasmon polariton waveguides operating at telecommunication wavelengths.

Volkov VS, Han Z, Nielsen MG, Leosson K, Keshmiri H, Gosciniak J, Albrektsen O, Bozhevolnyi SI.

Opt Lett. 2011 Nov 1;36(21):4278-80. doi: 10.1364/OL.36.004278.

PMID:
22048390
17.

Coupling between gap plasmon polariton and magnetic polariton in a metallic-dielectric multilayer structure.

Chen J, Wang P, Zhang ZM, Lu Y, Ming H.

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Aug;84(2 Pt 2):026603. Epub 2011 Aug 4.

PMID:
21929124
18.

Plasmonic mode-gap waveguides using hetero-metal films.

Lee S, Kim S.

Opt Express. 2010 Feb 1;18(3):2197-208. doi: 10.1364/OE.18.002197.

PMID:
20174048
19.

Pseudospectral mode solver for analyzing nonlinear optical waveguides.

Huang CC.

Opt Express. 2012 Jun 4;20(12):13014-29. doi: 10.1364/OE.20.013014.

PMID:
22714329
20.

Magnetic field integral equation analysis of interaction between a surface plasmon polariton and a circular dielectric cavity embedded in the metal.

Chremmos I.

J Opt Soc Am A Opt Image Sci Vis. 2009 Dec;26(12):2623-33. doi: 10.1364/JOSAA.26.002623.

PMID:
19956333
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